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Exploring nature profits: Development of novel and potent lipophilic antioxidants based on galloyl-cinnamic hybrids

机译:探索自然利润:基于没食子酸酯-肉桂杂化物的新型和有效的亲脂性抗氧化剂的开发

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Phenolic acids are ubiquitous antioxidants accounting for approximately one third of the phenolic compounds in our diet. Their importance was supported by epidemiological studies that suggest an inverse relationship between dietary intake of phenolic antioxidants and the occurrence of diseases, such as cancer and neurodegenerative disorders. However, until now, most of natural antioxidants have limited therapeutic success a fact that could be related with their limited distribution throughout the body and with the inherent difficulties to attain the target sites. The development of phenolic antioxidants based on a hybrid concept and structurally based on natural hydroxybenzoic (gallic acid) and hydroxycinnamic (caffeic acid) scaffolds seems to be a suitable solution to surpass the mentioned drawbacks. Galloyl-cinnamic hybrids were synthesized and their antioxidant activity as well as partition coefficients and redox potentials evaluated. The structure-property-activity relationship (SPAR) study revealed the existence of a correlation between the redox potentials and antioxidant activity. The galloyl-cinnamic acid hybrid stands out as the best antioxidant supplementing the effect of a blend of gallic acid plus caffeic acid endorsing the hypothesis that the whole is greater than the sum of the parts. In addition, some hybrid compounds possess an appropriate lipophilicity allowing their application as chain-breaking antioxidant in biomembranes or other type of lipidic systems. Their predicted ADME properties are also in accordance with the general requirements for drug-like compounds. Accordingly, these phenolic hybrids can be seen as potential antioxidants for tackling the oxidative status linked to the neurodegenerative, inflammatory or cancer processes.
机译:酚酸是普遍存在的抗氧化剂,约占我们饮食中酚类化合物的三分之一。它们的重要性得到了流行病学研究的支持,这些研究表明饮食中酚类抗氧化剂的摄入与疾病的发生(例如癌症和神经退行性疾病)之间存在反比关系。然而,直到现在,大多数天然抗氧化剂在治疗上的成功都是有限的,这可能与它们在体内的有限分布以及获得目标部位的固有困难有关。基于混合概念和结构上基于天然羟基苯甲酸(没食子酸)和羟基肉桂酸(咖啡酸)支架的酚类抗氧化剂的开发似乎是克服上述缺点的合适解决方案。合成了没食子酰基肉桂酸酯杂化物,并评估了其抗氧化活性以及分配系数和氧化还原电位。结构-性质-活性关系(SPAR)研究表明,氧化还原电势与抗氧化活性之间存在相关性。没食子酸-肉桂酸杂化物是最好的抗氧化剂,它补充了没食子酸和咖啡酸的混合物的效果,从而支持了这样的假设:整体大于部分的总和。另外,一些杂合化合物具有适当的亲脂性,从而使其可用作生物膜或其他类型脂质系统中的链断裂抗氧化剂。它们的预测ADME性质也符合对类药物化合物的一般要求。因此,这些酚杂化物可被视为潜在的抗氧化剂,用于解决与神经退行性,炎性或癌症过程相关的氧化状态。

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